摘要
背景:由于其独特性能的广泛证据,对聚合物结合的金纳米粒子(GNP)在生物医学中的性质的研究兴趣迅速增加。在生物医学领域,GNPs因其惰性和低水平的细胞毒性而被广泛使用。因此,当暴露于细胞时,它们不太可能发挥破坏作用。 GNP能够根据需要进行功能化,并且是理想的,因为它们不鼓励可能对抗功能化意图的不希望的副反应。生物污染是在细胞和生物分子水平发生的事件,在检测表面上非特异性结合并形成错误的输出。通过将生物分子的表面与聚合物缀合可以避免这种不希望的发生。聚合物密集重复链如聚乙二醇能够减少非特异性反应。聚合物缀合的GNPs在生物医学领域的应用是生物传感器,递送和治疗剂。 结论:因此,聚合物共轭GNP的性能和应用在这里被广泛研究。
关键词: 聚乙二醇,金纳米粒子,生物污垢,生物医学,聚合物,生物医学应用。
Current Medicinal Chemistry
Title:Polymer Conjugated Gold Nanoparticles in Biomedical Applications
Volume: 25 Issue: 12
关键词: 聚乙二醇,金纳米粒子,生物污垢,生物医学,聚合物,生物医学应用。
摘要: Background: Research interest on the properties of polymer conjugated gold nanoparticle (GNP) in biomedicine is rapidly rising because of the extensive evidences for their unique properties. In the field of biomedicine, GNPs have been widely used because of their inertness and low levels of cytotoxicity. Therefore, when exposed to cells, they are less prone to exert damaging effects. GNPs are capable of being functionalized as desired and are ideal as they do not encourage undesired side reactions that might counter react with the intention of the functionalization. Biofouling is an occurrence that takes place at cellular and biological molecular level, binds non-specifically on the detection surface and forms a wrong output. This undesired incidence can be avoided by conjugating the surface of biomolecules with polymers. Densely packed repeating chains of polymers such as polyethylene glycol are capable of decreasing non-specific reactions. Applications of polymer conjugated GNPs in the field of biomedicine are as biosensors, delivery and therapeutic agents.
Conclusion: Therefore, the properties and applications of polymer conjugated GNPs are studied widely as overviewed here.
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Cite this article as:
Polymer Conjugated Gold Nanoparticles in Biomedical Applications, Current Medicinal Chemistry 2018; 25 (12) . https://dx.doi.org/10.2174/0929867324666170116123633
DOI https://dx.doi.org/10.2174/0929867324666170116123633 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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